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Spin-wave reservoir chips can enhance edge computing

Reservoir computing (RC) has a few benefits over other artificial neural networks, including the reservoir that gives this technique its name. The reservoir functions mainly to nonlinearly transform input data more quickly ...

Scientists develop a new model of electric double layer

A new model accounts for a wide range of ion-electrode interactions and predicts a device's ability to store electric charge. The model's theoretical predictions align with the experimental results. Data on the behavior of ...

Alternating currents for alternative computing with magnets

A new study conducted at the University of Vienna, the Max Planck Institute for Intelligent Systems in Stuttgart, and the Helmholtz Centers in Berlin and Dresden takes an important step in the challenge to miniaturize computing ...

More news

General Physics
Findings hint at a superfluid phase in ²⁹F and ²⁸O
Condensed Matter
New material with wavy layers of atoms exhibits unusual superconducting properties
Condensed Matter
Topological quantum computers a step closer with new method to 'split' electrons
Condensed Matter
Antiferromagnetic spintronics advance opens door to next-gen electronics
Condensed Matter
Zirconium metals under extreme conditions found to deform in surprisingly complex ways
Condensed Matter
Quantum tech breakthrough could enable precision sensing at room temperature
General Physics
Energy-saving computing with magnetic whirls
Condensed Matter
Tunable nonlinear Hall effect observed at room temperature in tellurium
Condensed Matter
New strategy for simulating nonadiabatic dynamics of molecules at metal surfaces
Condensed Matter
Generating spin currents directly using ultrashort laser pulses
Condensed Matter
Wave scattering simulation unlocks potential metamaterials
Condensed Matter
Fundamental spintronics research reveals generic approach to magnetic second-order topological insulators
Condensed Matter
Overcoming magnetic disorder: Toward low-energy topological electronics
Condensed Matter
Unprecedented spin properties revealed in new artificial materials
Condensed Matter
Strong magnetic second harmonic generation effect discovered in two-dimensional CrPS₄ monolayer
Condensed Matter
Why do materials get stronger when they are deformed? Research sheds light on universal mechanisms of work hardening
Condensed Matter
Researchers advance new class of quantum critical metal that could advance electronic devices
Condensed Matter
Physicists capture images of atoms flowing along a boundary without resistance despite obstacles in their path
Condensed Matter
Unlocking the secrets of diamond: New insights into nitrogen-vacancy center formation
Condensed Matter
Adding an alternating magnetic field to layers of twisted graphene creates even more exotic properties

Other news

Biochemistry
Scientists discover chemical probes for previously 'undruggable' cancer target
Cell & Microbiology
Microtubule formation mechanism sheds light on how cells build their internal skeleton
Social Sciences
The flirting paradox: Why the attention your partner receives from others is liable to diminish your desire for them
Cell & Microbiology
A unified theory for predicting pathogen competition: Exploring how emerging new strains replace previous ones
Biochemistry
New compounds can activate prodrugs at predetermined locations in the body
Analytical Chemistry
Photocatalytic behavior at the air-solid interface offers new insights into environmental remediation
Biochemistry
Unique 'barcodes' for molecules could help expedite medical advancements
Ecology
Global study shows causes for the dominance of woody plants in drylands
Plants & Animals
Unlocking the genetic mysteries of modern roses: Research provides insights into origin and breeding
Astronomy
Astronomers detect very-high-energy gamma-ray emission surrounding distant pulsar
Archaeology
Cemetery study reveals how daily life changed from the Iron Age to the Roman period
Plants & Animals
Tube sock-like skunk can cover more ground than deer, study finds
Plants & Animals
Tubeworms, snails and other weird creatures found under the seafloor
Quantum Physics
Dual-species atomic arrays show promise for quantum error correction
Plants & Animals
Bonobos may be more vulnerable than previously thought, suggests genetics study
Evolution
Ancient hominins had humanlike hands, indicating earlier tool use, study reveals
Paleontology & Fossils
New venomous reptile species from the Late Triassic unearthed in Arizona
Molecular & Computational biology
Vitamin B₁'s journey in your body, and why it matters
Materials Science
Scientists apply ancient construction methods to help fabricate modern microparticles
Biochemistry
Highly-stabilized and selective inhibitor for cancer-causing enzyme developed

Scientists shed light on semiconductor degradation mechanism

Scientists at Nagoya Institute of Technology (NITech) and collaborating universities in Japan have gained new insight into the mechanisms behind degradation of a semiconductor material that is used in electronic devices. ...

Structure of fossil-fuel source rocks is finally decoded

The fossil fuels that provide much of the world's energy orginate in a type of rock known as kerogen, and the potential for recovering these fuels depends crucially on the size and connectedness of the rocks' internal pore ...

Revealing the inner working of magnetic materials

Björn Alling, researcher in theoretical physics at Linköping University, has, together with his colleagues, completed the task given to him by the Swedish Research Council in the autumn of 2014: Find out what happens inside ...

Atomic path from insulator to metal messier than thought

Researchers have peeked behind the curtain of the ultrafast phase transition of vanadium dioxide and found its atomic theatrics are much more complicated than they thought. It's a material that has fascinated scientists for ...

Determining the shape of cells

Cells are constantly performing small tasks such as repairing wounds. They exert force by changing shape. But how do cells translate their shape into exerting a force in a specific direction? Experimental and theoretical ...

Tiny diamond invention could help launch rockets into space

Scientists at ANU have invented tiny diamond electronic parts that could outperform and be more durable than today's devices in high-radiation environments such as rocket engines, helping to reach the next frontier in space.